JPS599626A - Optical deflector - Google Patents

Optical deflector

Info

Publication number
JPS599626A
JPS599626A JP57118785A JP11878582A JPS599626A JP S599626 A JPS599626 A JP S599626A JP 57118785 A JP57118785 A JP 57118785A JP 11878582 A JP11878582 A JP 11878582A JP S599626 A JPS599626 A JP S599626A
Authority
JP
Japan
Prior art keywords
motor
magnetic field
optical deflector
field ripple
polygon mirror
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP57118785A
Other languages
Japanese (ja)
Inventor
Iwao Hamaguchi
浜口 「巌」
Isamu Shibata
柴田 勇
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ricoh Co Ltd
Original Assignee
Ricoh Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ricoh Co Ltd filed Critical Ricoh Co Ltd
Priority to JP57118785A priority Critical patent/JPS599626A/en
Priority to US06/511,677 priority patent/US4585297A/en
Publication of JPS599626A publication Critical patent/JPS599626A/en
Pending legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B26/00Optical devices or arrangements for the control of light using movable or deformable optical elements
    • G02B26/08Optical devices or arrangements for the control of light using movable or deformable optical elements for controlling the direction of light
    • G02B26/10Scanning systems
    • G02B26/12Scanning systems using multifaceted mirrors
    • G02B26/121Mechanical drive devices for polygonal mirrors
    • G02B26/122Control of the scanning speed of the polygonal mirror

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Facsimile Scanning Arrangements (AREA)
  • Mechanical Optical Scanning Systems (AREA)

Abstract

PURPOSE:To reduce a phase shift and to obtain excellent picture quality by setting a magnetic field ripple generated by a motor to an integer multiple of the number of reflecting surfaces of a rotating polygon mirror. CONSTITUTION:A beam emitted from a semiconductor laser 1 is modulated by a recording signal to make a main scan in the axial direction of a photosensitive drum 6 through the rotation of the rotating polygon mirror 4 and also to make a subscan through the rotation of the photosensitive drum 6, forming an electrostatic latent image corresponding to a picture to be formed thereupon. The most important cause of the phase shift of the motor 3 which deteriorates the quality of the picture originates from a magnetic field ripple of the motor 3, so the magnetic field ripple is canceled by being adjusted to an integer multiple of the number of surfaces of the rotating polygon mirror 4. Thus, the phase shift is reduced and deviation due to speed unstableness are both reduced.

Description

【発明の詳細な説明】 この発明は、レーザ光を使用するプリンタやディスプレ
イ、欠陥検知装置またはPOSスキャナ等に使用される
回転多面鏡またはホログラム、ディスクのような光漏】
陶器に関する。
DETAILED DESCRIPTION OF THE INVENTION This invention relates to a rotating polygon mirror, hologram, or disk-like light leakage device used in printers, displays, defect detection devices, POS scanners, etc. that use laser light.
Regarding pottery.

まず初めに、オ・1図を参照して回転多面鏡を用いたレ
ーザプリ/りの一例の概略について説明する。半導体レ
ーザlからの出射ビームは、納会し/ズ2により平行光
化さねて、モータ3によりl1される回転多面鏡4に入
射する。この回転多面腕4によって・論量されたビーム
は、fθ し/ズ5により感光体ドラム6上に定食スポ
ットを結像する。半導体レーザlからの出射ビームは、
bC録18号により変調さJlており、回転多面説40
回転により感光体ドラム6の軸方向に主走l:を行ない
、感光体ドラム60回転により副走査が行なわねる。
First, an example of a laser prism using a rotating polygon mirror will be outlined with reference to FIG. The beam emitted from the semiconductor laser 1 is collimated by a laser beam 2 and then enters a rotating polygon mirror 4 that is rotated by a motor 3. The beam oriented by the rotating polygonal arm 4 forms a fixed meal spot on the photoreceptor drum 6 by means of an fθ lens 5. The beam emitted from the semiconductor laser l is
It is modulated by bC record No. 18, and the rotating polygon theory 40
The rotation causes a main scan l: in the axial direction of the photoreceptor drum 6, and the rotation of the photoreceptor drum 60 causes a sub-scan to be performed.

感光体ドラム60衣面は、予め所定極性に一様に帝゛颯
さ牙1ており、走置スポットか当った部分の電荷が選択
的に消散さねて、そこに記録すべき幽1ぼに対応した静
電潜像が形成される。こJ1乞トナーと呼ばねる暦色微
粒子を静電的に何滴させて睨1ヂし、現像画像を紙のよ
うな画像支持体に転写して最終ll1Ll像を得る。主
走査の同期には、主走査の開始、Q近傍に光検知器7を
配して、こねにより走査光を検知して記録信号との同ル
」をとっている。
The coating surface of the photoreceptor drum 60 is uniformly impermeable to a predetermined polarity in advance, so that the electric charge at the part that hits the traveling spot is not selectively dissipated, and the image to be recorded there is not dissipated. An electrostatic latent image corresponding to the image is formed. A number of drops of calendar-colored fine particles called J1 toner are electrostatically applied, and the developed image is transferred to an image support such as paper to obtain a final image. To synchronize the main scanning, a photodetector 7 is arranged near the start of the main scanning and Q, and the scanning light is detected by kneading to ensure synchronization with the recording signal.

このような装置に使用さhる回転多面鏡の特注に大きく
関係する要因の一つに、ンターすなわちぶ第1の1it
1題がある。こ第1げ、多面′晩を回転させるモータの
回転周期内の回転むらを結果させる位相ぶね(Phas
e Jitter )  とモータの経貼的な回転むら
を結果させる速rx女定性(Velocity 5ta
bi1口y)に起因する。位相ぶ第1があると、主走倉
方向に垂直すなわち副走亘方向に平行な11−は、第4
図に示すような細かなふれとして画像上に現わね、速度
安定1〈Lが悪いと、1’ 3図に示すような緩やかな
ぶflとなってリドわJl、いすねの―合にも画像品質
ケ損うことになる。
One of the factors greatly related to the customization of rotating polygon mirrors used in such devices is the
There is one problem. This phase block (Phas) results in uneven rotation within the rotation period of the motor that rotates the first and second faces.
Velocity 5ta (Velocity 5ta), which results in uneven rotation of the motor
due to bi1mouthy). If there is a phase number 1, 11- perpendicular to the main running direction, that is, parallel to the secondary running direction, is the fourth
This appears on the image as a small fluctuation as shown in the figure, and if the speed stability 1<L is poor, it becomes a gentle swing fl as shown in Figure 1' 3, and it also changes when the lid is turned or the seat is moved. This will result in a loss of image quality.

一般に、回転多匍説の回転数すなわちモータのiu+転
数が低下すると、壜・4図に示ずように、位相ふねおよ
び速度安定(仲を原因とするぶ牙1が共に増加する。し
かしなから、この両者には、定数なkとすると、 速度安尾性十位相ぶね 十k ・・・・・・ (1)の
関係があるので1位相ぶわを低下させることにより、速
度安定性に起因するぶねも、同様に低下させることかで
きろ。
In general, when the rotational speed of the multi-rotation theory, that is, the iu + rotational speed of the motor, decreases, as shown in Fig. 4, both the phase angle and the speed stability (bug 1 caused by the rotation) increase. Therefore, if k is a constant, there is a relationship between these two as shown in (1). Is it possible to similarly lower the tension caused by sex?

この発明の目的は、位相ぶねを低下させろことにより、
良好な画師品貿を得ることのできる光偏向器を提供する
ことにある。
The purpose of this invention is to reduce the phase swing.
It is an object of the present invention to provide an optical deflector that can obtain good trade for artists.

この発明の上6と目的は、回1匹多面鏡またはホログラ
ムディスクにおける面数またはIl&j数?、こねらを
回転させるモータによって生ずる1′i会界リツプルの
搬数倍に等しく矩めることにより遅成さねる。
The top 6 and purpose of this invention is to increase the number of surfaces or Il&j in a single polygon mirror or hologram disk? , by making the square equal to the number of carriers times the 1'i boundary ripple produced by the motor that rotates the kneader.

以下に、この兄明化さらに詳しく説明する。まず初めに
、位イ・目ふわの原因を考察すると、田・lに多’+k
 =またはホログラムディスクの面消度(平面度)、J
−2にモータの磁界リップル、矛3にモータの加工悄度
寺が考えられる。仄に、こねらの要因の位相ぶね全体に
及はす影響について考察すると、3・5図のようになる
。すなわち、磁界リップルによる影響が最も大きく、次
に偏向器の面精度、そしてモータの加工1*反と続いて
いる。このことから、位相ぶわの最も大きな要因が磁界
リップルであることが理解される。
Below, this older brother's transformation will be explained in more detail. First of all, if we consider the causes of Ii and Mefuwa, we will find that Ta, L and Ta' + k.
= or surface extinction (flatness) of the hologram disk, J
-2 is considered to be the motor's magnetic field ripple, and 3 is considered to be the motor machining. By the way, if we consider the influence of these factors on the entire phase curve, we will see the results shown in Figures 3 and 5. That is, the magnetic field ripple has the largest influence, followed by the surface accuracy of the deflector, and then the machining of the motor. From this, it is understood that the most important factor in phase distortion is magnetic field ripple.

次に、磁界リップルとモータの極数および相数との関係
を調べると、例えは2(枢2相モータの磁界リップルは
1、オ6図VC示すようにステータの1回転中に4回埃
わわている。このことから、モータの1回転中に埃わね
る磁界リップル目゛。
Next, when we examine the relationship between the magnetic field ripple and the number of poles and phases of the motor, we find that it is 2 (the magnetic field ripple of a two-phase motor is 1, and as shown in Fig. From this, the magnetic field ripple that occurs during one rotation of the motor is expected.

磁界リップル−モータ物故×相数  ・・・・・・・(
2)となる。
Magnetic field ripple - Motor failure x number of phases ・・・・・・(
2).

以上の考察から、偏向器の面数または個数を叫昇りノズ
ルの整数倍にすねは、偏向器の1a転によって低界すノ
グルがキヤ/−セルさtするので1位相ぶ第1は小さく
なる、との結論が導き出さ才する。例えは、2(喫4相
モータ、41寮2相モータ、4性4相モータ等の1遍合
は、偏向器の面数または個数ビ8とし、4極3相モータ
、81菫3相モータ、6極2相モータ、6惨4相モータ
寺の場合は、それらを12と定めろ。このような関係式
は、ACン/クロナスモータおよびDCモータの両方に
適用することかできる。
From the above considerations, if the number of surfaces or pieces of the deflector is made an integral multiple of the number of rising nozzles, the low field noggle will be shifted by the 1a rotation of the deflector, so the 1 phase difference will become smaller. , the conclusion is drawn. For example, for a 2-pole 4-phase motor, a 41-pole 2-phase motor, a 4-pole 4-phase motor, etc., the number of deflectors is 8, and a 4-pole 3-phase motor, an 81-pole 3-phase motor, etc. , a 6-pole 2-phase motor, and a 6-pole 4-phase motor, set them as 12. Such a relational expression can be applied to both AC/chronus motors and DC motors.

このように、この発明による光偏向器にょ才1け、位相
ふJlの主たる原因である磁界リップルが、光偏向器の
面数または個数をこねに合わせることによってキャンセ
ルされるので1位相ふねを低下できるとともに速度安定
性に起因するぶねを同1拍に一低下させることかできる
。行にモータの回転数が10000 rpm以下になる
と、こねらのぷ寸1か増大して画稼品賀を損うので、こ
ねを有効に防止することができる。
In this way, the optical deflector according to the present invention has the advantage that the magnetic field ripple, which is the main cause of the phase difference, is canceled by adjusting the number of surfaces or pieces of the optical deflector. In addition to being able to reduce the vibration caused by speed stability, it is also possible to reduce the vibration caused by speed stability by one beat per beat. If the rotational speed of the motor is less than 10,000 rpm, the size of the kneading increases by 1 or more, damaging the image quality, so kneading can be effectively prevented.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は、先制陶器が使用さねるレーザプリンタの一例
を示″g−概略図、3′2図は、泣4bふJ′1による
#+I!II隊のぶねを示す図、3・3図は、速度女定
即に起因する勝画像のふ才]を示す図、刀・4図(コ1
.鼠相ぶわおよび速度安定性とモータ回転数の関係を示
す図、1・5図は1位相ぶねのt6原因とモータ回転数
との間貸くを示す図、376図は、ステータ角良と磁界
リップルとの関係を示す図である。 ]・・・半導体レーサ、2・・・結合し/ズ、3・・・
モータ、4・・・回転多面腕、5・・・Jo  レノズ
、6・・・紗光体ドラム、7・・同期用光検知器 手続補正書(1劃 特許庁長官 若杉 和犬 殿 ■ 事件の表示 昭和57年特許願第118785号 2 発明の名称 光偏向器 3 補正をする者 事件との関係 特許出願人 名    称 (674)  株式会社 リ コ −4
代理人 住    所 東京都世田谷区経堂4丁目5番4号明細
書の「特許請求の範囲」の欄及び[発明の詳細な説明」
の欄 6 補正の内容 (2)明細書第4頁第10行の「における」から次行冒
頭の「ら」までを削除し、さらに同第6頁第6頭の「ル
」の次に「を、これ゛らにおける面数または個数」を加
入する。 (3)同第5頁第12行の「偏向器」の前に「磁界リッ
プルを」を加′入し、同行末尾がら次行にがけての「を
磁界リップル」を削除する。 (4)同第6頁第6行の[個数をこれに合わせる」を[
個数の整数倍に合わせられる]に訂正する。 特許請求の範囲 1、 モータとこのモータによって回転される軸に取り
付けられた反射部材とを含む光偏向器であっなっている
ことを特徴とする光偏向器。 2、前記反射部材がホログラムディスクであり、剪にな
っていることを特徴とする特許請求の範囲第1項記載の
光偏向器。 3、前記モータがACシンクロナスモータである特許請
求の範囲第1項または第2項記載の光偏向器。 4、前記モータがDCモータである特許請求の範囲第1
項または第2項記載の光偏向器。
Figure 1 shows an example of a laser printer used by Preemptive Pottery. Figure 3'2 is a schematic diagram of the laser printer used by Preemptive Pottery. Figure 3'2 is a diagram showing the #+I! The figure is a figure showing the power of winning images caused by speed female determination, and a figure 4 of the sword (Ko 1).
.. Figures 1 and 5 are diagrams showing the relationship between speed stability and motor rotation speed, Figures 1 and 5 are diagrams showing the cause of t6 in 1-phase spring and the relationship between motor rotation speed, and Figure 376 is a diagram showing the relationship between the stator angle and motor rotation speed. FIG. 3 is a diagram showing the relationship between magnetic field ripple and magnetic field ripple. ]...Semiconductor laser, 2...Couple/Z, 3...
Motor, 4...Rotating multifaceted arm, 5...Jo Reno's, 6...Glass drum, 7...Synchronization photodetector procedural amendment (1st chapter) Mr. Kazuinu Wakasugi, Commissioner of the Patent Office■ Indication Patent Application No. 118785 of 1982 2 Name of the invention Optical deflector 3 Relationship to the case of the person making the amendment Patent applicant name (674) Ricoh Co., Ltd. -4
Agent Address: 4-5-4 Kyodo, Setagaya-ku, Tokyo “Claims” column and “Detailed Description of the Invention” of the specification
Column 6: Contents of the amendment (2) Delete the words "in" on page 4, line 10 of the specification to "ra" at the beginning of the next line, and add "" next to "ru" at the beginning of page 6, "ra". and the number of surfaces or pieces in these. (3) Add ``magnetic field ripple'' before ``deflector'' on page 5, line 12, and delete ``magnetic field ripple'' from the end of the same line to the next line. (4) On page 6, line 6, change the number of pieces to this.
It is corrected to be adjusted to an integer multiple of the number of pieces. Claim 1: An optical deflector comprising a motor and a reflecting member attached to a shaft rotated by the motor. 2. The optical deflector according to claim 1, wherein the reflecting member is a hologram disk and has a shape. 3. The optical deflector according to claim 1 or 2, wherein the motor is an AC synchronous motor. 4. Claim 1, wherein the motor is a DC motor.
The optical deflector according to item 1 or 2.

Claims (1)

【特許請求の範囲】 1、 モータとこのモータによって回転される軸に取り
付けられた反射部側とを含む光偏向器であって、前記反
射部材における反射面の面数が。 前記モータによって生する磁界リップルの整数倍になっ
ていることを特徴とする光偏向器。 2、 前日−反射部材がホログラムディスクであり。 ホログラムディスク内のホログラム個数が前記モータに
よって生ずる磁界リップルの蟹数倍になっていることを
特徴とする特許請求の範囲3・1項記載の光偏向器。 3、前記モータかACンノクロナスモークである特許請
求の範囲才1項または3□ 2項記載の光偏向器。 4、  Mff rjピモータがDCモータである特許
請求の範囲3′1項またはオ′2項記載の光偏向器。
[Scope of Claims] 1. An optical deflector including a motor and a reflecting section attached to a shaft rotated by the motor, wherein the number of reflecting surfaces in the reflecting member is: An optical deflector characterized in that the magnetic field ripple is an integral multiple of the magnetic field ripple generated by the motor. 2. The day before - The reflective member was a hologram disk. 3. The optical deflector according to claim 3, wherein the number of holograms in the hologram disk is multiplied by the number of magnetic field ripples generated by the motor. 3. The optical deflector according to claim 1 or 3□2, wherein the motor is an AC digital chronometer. 4. The optical deflector according to claim 3'1 or e'2, wherein the Mff rj pivot motor is a DC motor.
JP57118785A 1982-07-08 1982-07-08 Optical deflector Pending JPS599626A (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
JP57118785A JPS599626A (en) 1982-07-08 1982-07-08 Optical deflector
US06/511,677 US4585297A (en) 1982-07-08 1983-07-07 Light deflector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP57118785A JPS599626A (en) 1982-07-08 1982-07-08 Optical deflector

Publications (1)

Publication Number Publication Date
JPS599626A true JPS599626A (en) 1984-01-19

Family

ID=14745021

Family Applications (1)

Application Number Title Priority Date Filing Date
JP57118785A Pending JPS599626A (en) 1982-07-08 1982-07-08 Optical deflector

Country Status (2)

Country Link
US (1) US4585297A (en)
JP (1) JPS599626A (en)

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US5291318A (en) * 1992-11-02 1994-03-01 Xerox Corporation Holographic member for a real-time clock in a raster output scanner
US7141049B2 (en) * 1999-03-09 2006-11-28 Thermage, Inc. Handpiece for treatment of tissue
AUPP176898A0 (en) * 1998-02-12 1998-03-05 Moldflow Pty Ltd Automated machine technology for thermoplastic injection molding
US20040082940A1 (en) * 2002-10-22 2004-04-29 Michael Black Dermatological apparatus and method
US20060217695A1 (en) * 2003-12-31 2006-09-28 Debenedictis Leonard C Optically-induced treatment of internal tissue
US20070265606A1 (en) * 2003-02-14 2007-11-15 Reliant Technologies, Inc. Method and Apparatus for Fractional Light-based Treatment of Obstructive Sleep Apnea
US7184184B2 (en) * 2003-12-31 2007-02-27 Reliant Technologies, Inc. High speed, high efficiency optical pattern generator using rotating optical elements
US7196831B2 (en) * 2003-12-31 2007-03-27 Reliant Technologies, Inc. Two-dimensional optical scan system using a counter-rotating disk scanner
US7372606B2 (en) * 2003-12-31 2008-05-13 Reliant Technologies, Inc. Optical pattern generator using a single rotating component
US20070212335A1 (en) * 2006-03-07 2007-09-13 Hantash Basil M Treatment of alopecia by micropore delivery of stem cells
US9933753B2 (en) * 2012-08-01 2018-04-03 Real View Imaging Ltd. Increasing an area from which reconstruction from a computer generated hologram may be viewed

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Publication number Priority date Publication date Assignee Title
JPS5242013A (en) * 1975-09-29 1977-04-01 Canon Inc Rotating polyhedral mirror scanning unit

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Publication number Priority date Publication date Assignee Title
US3940202A (en) * 1971-12-31 1976-02-24 Matsushita Electric Industrial Co., Ltd. Light beam deflection system
JPS533833A (en) * 1976-07-01 1978-01-13 Fuji Photo Film Co Ltd Synchronous signal generation in light beam scan
US4160939A (en) * 1977-09-13 1979-07-10 Xerox Corporation Motor speed control system
US4213157A (en) * 1979-02-05 1980-07-15 Xerox Corporation Self tracking laser scanning apparatus

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5242013A (en) * 1975-09-29 1977-04-01 Canon Inc Rotating polyhedral mirror scanning unit

Also Published As

Publication number Publication date
US4585297A (en) 1986-04-29

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